VND7N0413TR Integrated Circuits (ICs) |
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Allicdata Part #: | 497-3304-2-ND |
Manufacturer Part#: |
VND7N0413TR |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | STMicroelectronics |
Short Description: | MOSFET N-CH 40V 6A DPAK |
More Detail: | N/A |
DataSheet: | VND7N0413TR Datasheet/PDF |
Quantity: | 1000 |
Voltage - Supply (Vcc/Vdd): | Not Required |
Base Part Number: | VN*7N |
Supplier Device Package: | DPAK |
Package / Case: | TO-252-3, DPak (2 Leads + Tab), SC-63 |
Operating Temperature: | -40°C ~ 150°C (TJ) |
Fault Protection: | Current Limiting (Fixed), Over Temperature, Over Voltage |
Features: | -- |
Input Type: | Non-Inverting |
Rds On (Typ): | 140 mOhm (Max) |
Current - Output (Max): | 4A |
Series: | OMNIFET II™, VIPower™ |
Voltage - Load: | 31V (Max) |
Interface: | On/Off |
Output Type: | N-Channel |
Output Configuration: | Low Side |
Ratio - Input:Output: | 1:1 |
Number of Outputs: | 1 |
Switch Type: | General Purpose |
Part Status: | Obsolete |
Packaging: | Tape & Reel (TR) |
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Introduction
The VND7N0413TR is a high-efficiency and versatile power distribution switch, load driver, and switching regulator IC. It is designed and built for use in a wide range of applications where a high level of efficiency and reliability is required. This article will discuss the application field and working principle of the VND7N0413TR.
Application Field of VND7N0413TR
The VND7N0413TR is designed for use in various power system applications such as consumer electronics, power modules, and motor control. It can also be used for energy-saving, high efficiency, and high performance systems. It is designed to handle loads up to 4.0A.
The VND7N0413TR is ideal for use in a wide range of power management applications, such as DC-DC conversion, AC-DC conversion, load switch and level shifters, pass-through, and battery, supercapacitor, and transformer management. It is capable of providing up to 4A continuous-current to the switch and a regulated voltage output. It is also capable of operating at high frequencies and signal rates up to 800kHz, giving the user the ability to switch high-current and sensitive electronic components with minimal loss.
The VND7N0413TR is also suitable for use in battery powered, portable applications. This is because it has a wide input voltage range of 4V to 28V that makes it suitable for most popular battery chemistries. Additionally, the high efficiency of the device makes it ideal for power-management applications that require long run times and low battery consumption.
Working Principle of VND7N0413TR
The VND7N0413TR operates using an externally-driven, non-inverting power switch circuit. This works by the load sensing pin being used to step down the voltage fed through to the load. When the voltage rises too high, the load sensing circuit will activate the internal switch, allowing current to flow to the load. When the voltage drops too low, the switch will close, preventing current from flowing to the load.
This setup allows the VND7N0413TR to provide a regulated voltage output, even when faced with current fluctuations, spikes, and other transient conditions. It also provides efficient power management, by delivering only the current that the load requires. This efficient power management is further supplemented by the duty-cycle control feature that allows the user to adjust the output voltage according to their application.
In addition, the VND7N0413TR features a wide temperature range of -40°C to +85°C, making it suitable for use in a wide range of environments and applications. This makes it suitable for rugged and extreme conditions.
Conclusion
The VND7N0413TR is a highly efficient and reliable power distribution switch, load driver, and switching regulator IC. It is designed for use in a wide range of applications and can provide up to 4A of continuous current. The VND7N0413TR also operates using an externally-driven, non-inverting power switch circuit and provides a wide temperature range of -40°C to +85°C. This makes it suitable for use in a wide range of environments and applications.
The specific data is subject to PDF, and the above content is for reference
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